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石墨烯的晶格透明性。

Lattice Transparency of Graphene.

机构信息

Program in Nano Science and Technology, Graduate School of Convergence Science and Technology, Seoul National University , Seoul 08826, South Korea.

Advanced Institutes of Convergence Technology , 145 Gwanggyo-ro, Yeongtong-gu, Suwon-si, Gyeonggi-do 16229, South Korea.

出版信息

Nano Lett. 2017 Mar 8;17(3):1711-1718. doi: 10.1021/acs.nanolett.6b04989. Epub 2017 Feb 16.

Abstract

Here, we demonstrated the transparency of graphene to the atomic arrangement of a substrate surface, i.e., the "lattice transparency" of graphene, by using hydrothermally grown ZnO nanorods as a model system. The growth behaviors of ZnO nanocrystals on graphene-coated and uncoated substrates with various crystal structures were investigated. The atomic arrangements of the nucleating ZnO nanocrystals exhibited a close match with those of the respective substrates despite the substrates being bound to the other side of the graphene. By using first-principles calculations based on density functional theory, we confirmed the energetic favorability of the nucleating phase following the atomic arrangement of the substrate even with the graphene layer present in between. In addition to transmitting information about the atomic lattice of the substrate, graphene also protected its surface. This dual role enabled the hydrothermal growth of ZnO nanorods on a Cu substrate, which otherwise dissolved in the reaction conditions when graphene was absent.

摘要

在这里,我们通过使用水热生长的 ZnO 纳米棒作为模型系统,展示了石墨烯对基底表面原子排列的透明度,即石墨烯的“晶格透明度”。研究了在具有不同晶体结构的石墨烯覆盖和未覆盖基底上 ZnO 纳米晶体的生长行为。尽管基底与石墨烯的另一侧相连,但成核 ZnO 纳米晶体的原子排列与各自基底的原子排列非常吻合。通过基于密度泛函理论的第一性原理计算,我们证实了即使在石墨烯层存在的情况下,成核相也遵循基底原子排列,这在能量上是有利的。除了传递关于基底原子晶格的信息外,石墨烯还保护了其表面。这种双重作用使得 ZnO 纳米棒能够在 Cu 基底上进行水热生长,而在没有石墨烯的情况下,Cu 基底会在反应条件下溶解。

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